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Heat Pump With a Condenser Including Solid-Liquid Phase Change Material

机译:带冷凝器的热泵,包括固液相变材料

摘要

The growing usage of heat pumps increases the global electricity demand. During winter, the external temperature peak is at noon whereas electricity peak is at the end of the afternoon. Latent heat storage can be used to benefit from the time lag between these two periods. In this application phase change material (PCM) is integrated in the condenser of an air-to-air heat pump. The condensing temperature is used to melt down the PCM at noon. Then, during electricity peak load, the compressor is turned off and the indoor air of the house can be heated by exchanging heat with the melted PCM through the condenser. The condenser design is important to fulfill heating requirements since PCMs have in general low thermal conductivity. A dynamic model using Dymola is applied to size and simulate a prototype. Results show that a well sized heat exchanger can fulfill any heating requirements, however it is voluminous compared to an equal capacity regular condenser.
机译:热泵的使用不断增长,增加了全球电力需求。在冬季,外部温度高峰在中午,而电力高峰在下午结束。可以利用潜热存储来受益于这两个时间段之间的时间差。在此应用中,相变材料(PCM)集成在空气对空气热泵的冷凝器中。冷凝温度用于中午熔化PCM。然后,在电高峰负载期间,关闭压缩机,并通过冷凝器与熔化的PCM进行热交换,从而可以加热房屋的室内空气。冷凝器的设计对于满足加热要求非常重要,因为PCM通常具有较低的热导率。将使用Dymola的动态模型应用于大小并模拟原型。结果表明,尺寸合适的热交换器可以满足任何加热要求,但是与等容量的常规冷凝器相比,它体积庞大。

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